促生木霉菌施用对山药生长及土壤微生物区系的影响
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S154

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中央本级重大增减支项目(2060302)、国家重点研发计划项目(2023YFD1500904)和江苏高校青蓝工程项目资助。


Effects of Different Growth-promoting Trichoderma Strains on Growth and Soil Microbiome of Chinese Yam
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Central Government’s Major Revenue and Expenditure Adjustment Projects (2060302); Special Funds for Basic Scientific Research Operations of Central Universities (KYPT2024005); National Key Research and Development Program (2023YFD1500904).

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    摘要:

    应用高通量测序技术,研究了田间条件下不同类型促生木霉菌及其复合菌施用对山药生长以及土壤理化性质和微生物群落的影响。结果表明:相比于不接种菌剂对照(CK),接种贵州木霉NJAU4742(T1)、桔绿木霉JS84(T2)、长枝木霉MD30(T3)以及接种以上3种木霉菌复合菌(T4)处理均可提高山药株高、叶片长度与宽度以及产量。相比于对照,T1、T2、T3以及T4处理山药产量分别增加7.29%、26.37%、1.38%和31.77%,但仅复合菌处理增产效果显著。基于主坐标分析发现,木霉菌接种显著改善土壤细菌和真菌群落组成,可激发土壤中芽孢杆菌属、木霉菌属等有益菌群。进一步的冗余分析(RDA)发现,速效钾含量是驱动山药土壤细菌和真菌群落装配形成的主要养分因子之一,其与芽孢杆菌属和木霉属关联密切。曼特尔(Mantel)相关性分析进一步发现,土壤有机质、速效钾、有效磷含量均与山药产量呈显著正相关。本研究通过田间试验证实,木霉菌施用能够促进山药生长和产量提升,且复合菌群处理促生与培肥改土作用最佳。研究结果为利用功能菌促进山药生长提供了技术支撑。

    Abstract:

    High-throughput sequencing technology was used to investigate the effects of different types of Trichoderma fungi and their composite inoculants on yam growth, as well as soil physicochemical properties and microbial communities under field conditions. The results showed that, compared with the control without Trichoderma strain inoculation (CK), treatments with inoculation with Trichoderma guizhouense NJAU4742 (T1), Trichoderma longibrachiatum JS84 (T2), Trichoderma longibrachiatum MD30 (T3), and the composite inoculant of these three Trichoderma strains mentioned above (T4) all increased plant height, leaf length and width, and yield of Chinese yam. Specifically, compared with the control, yam yields under T1, T2, T3, and T4 increased by 7.29%, 26.37%, 1.38%, and 31.77%, respectively. Nevertheless, only T4 exhibited a significantly higher yield. Principal coordinates analysis (PCA) revealed that Trichoderma inoculation significantly altered soil bacterial and fungal community compositions, promoting the growth of beneficial microbial genera such as Bacillus and Trichoderma. Further redundancy analysis (RDA) indicated that soil available potassium content was one of the key nutrient factors driving the assembly of soil bacterial and fungal communities, showing a strong correlation with Bacillus and Trichoderma genera. Mantel's correlation analysis further found significant positive correlations between yam yield with the contents of soil organic matter, available potassium and phosphorus. This study demonstrates through field experiments that the application of Trichoderma inoculation can promote yam growth and yield, with composite microbial inoculants showing the best growth-promoting and soil-amendment effects. The findings provide technical support for utilizing functional microbes to promote Chinese yam growth..

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程欢欢,王琰,袁紫仪,郭文琦,韩晓勇,杨健,沈宗专,李荣,沈其荣.促生木霉菌施用对山药生长及土壤微生物区系的影响[J].土壤,2025,57(5):1025-1033. CHENG Huanhuan, WANG Yan, YUAN Ziyi, GUO Wenqi, HAN Xiaoyong, YANG Jian, SHEN Zongzhuan, LI Rong, SHEN Qirong. Effects of Different Growth-promoting Trichoderma Strains on Growth and Soil Microbiome of Chinese Yam[J]. Soils,2025,57(5):1025-1033

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  • 收稿日期:2024-11-11
  • 最后修改日期:2024-12-13
  • 录用日期:2024-12-27
  • 在线发布日期: 2025-11-24
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